On the Structural Simplification, Compact and Light Design of a Vehicle Suspension, Achieved by Using a Colloidal Cylinder with a Dual Function of Absorber and Compression-Spring
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-33795-6_3.pdf
Reference13 articles.
1. Eroshenko VA, Piatiletov I, Coiffard L, Stoudenets V (2007) A new paradigm of mechanical energy dissipation: experimental investigation and effectiveness of a novel car damper. Automobile Eng 221:301–312
2. Suciu CV, Iwatsubo T, Deki S (2003) Investigation of a colloidal damper. Colloid Interface Sci 259:62–80
3. Suciu CV, Iwatsubo T, Deki S (2004) Novel principle of mechanical energy dissipation. part 1: static performances of colloidal damper. JSME Int C47:180–188
4. Suciu CV, Iwatsubo T (2004) Novel principle of mechanical energy dissipation. part 2: dynamic performances of colloidal damper. JSME Int C47:189–198
5. Iwatsubo T, Suciu CV, Ikenaga M, Yaguchi K (2007) Dynamic characteristics of a new damping element based on surface extension principle in nanoporous. Sound Vib 308:579–590
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